Books on the topic 'Cu-Ni-In'

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1

Dechert, Christopher. The eutectoid reaction in Ni-Cu-S MATTES (A metallographic study). Sudbury, Ont: Laurentian University, School of Engineering, 1990.

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2

Krivolutskaya, Nadezhda A. Siberian Traps and Pt-Cu-Ni Deposits in the Noril’sk Area. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-17205-7.

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3

Lock, Alan S. Mobility and deposition of Ni, Cu and PO4 in Kelly Lake, Sudbury, Ontario. Sudbury, Ont: Laurentian University, Department of Earth Sciences, 2002.

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4

Magumbe, Lionel. Phase equilibria in the Chalcocite/Metallics Cotectic region of the Ni-Cu-S system. Sudbury, Ont: Laurentian University, School of Engineering, 1992.

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5

Gunn, A. G. Investigations for Cu-Ni and PGE in the Hill of Barra area, near Oldmeldrum, Aberdeenshire. Keyworth: British Geological Survey, 1991.

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6

Habtemichael, Yebio. Effects of arsenic on the solidification of ternary eutectic matte in the Ni-Cu-S system. Sudbury, Ont: Laurentian University, School of Engineering, 1998.

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7

Gregory, Steven Kelvey. Geology, mineralogy, and geochemistry of transitional contact/footwall mineralization in the McCreedy East NI-CU-PGE deposit, Sudbury igneous complex. Sudbury, Ont: Laurentian University, School of Graduate Studies, 2005.

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8

Scherelis, Günther. Untersuchungen zur profildifferenzierten Variabilität der Schwermetalle Cr, Mn, Fe, Ni, Cu, Zn und Pb in rezenten und fossilen Parabraunerden Baden-Württembergs. Stuttgart: Geographisches Institut der Universität Stuttgart, 1989.

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9

Bardeggia, Michael Aldo J. Sierpinski fractal analysis of Cu and Ni granule accumulations in the hepatopancreas of terrestrial isopods collected from a control and a metal contaminated site. Sudbury, Ont: Laurentian University, Department of Biology, 1994.

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10

Taylor, Ronald M. Comparative baseline concentration of Ca, Mg, Na, K, Cu, Zn, Fe, Mn, Ni and Cr in the freshwater crayfish, Cambarus robustus (Cambaridae, Decapoda, Crustacea) from an acidic metal contaminated lake and circumneutral uncontaminated stream. Sudbury, Ont: Laurentian University, 1994.

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11

Marchandise, H. The certification of the impurity contents (Ag, As, Bi, Cd, Cu, Ni, Sb, Se, Sn, Te, Tl and Zn) in three grades of lead: Electrolytically refined lead BCR No 286, thermally refined lead BCR No 287, lead with added impurities BCR No 288. Luxembourg: Commission of the European Communities, 1985.

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12

P, Dhar H., and Texas A & M University. Sea Grant College Program., eds. Corrosion of Cu and Cu-Ni alloys in 0.5M NaCl and in synthetic seawater. College Station, Tex: Sea Grant College Program, Texas A & M University, 1985.

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13

P, Dhar H., and Texas A & M University. Sea Grant College Program., eds. Corrosion of Cu and Cu-Ni alloys in 0.5M NaCl and in synthetic seawater. College Station, Tex: Sea Grant College Program, Texas A & M University, 1985.

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14

Krivolutskaya, Nadezhda A. Siberian Traps and Pt-Cu-Ni Deposits in the Noril’sk Area. Springer, 2015.

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15

New Results and Advances in PGE Mineralogy in Ni-Cu-Cr-PGE Ore Systems. MDPI, 2019. http://dx.doi.org/10.3390/books978-3-03921-717-5.

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16

The association of Co, Ni, Cu, and Zn with Fe and Mn oxides in soils. 1985.

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17

Quevauviller, Ph. The Certification of the Contents of Cd, Cu, Pb, Mo, Ni and Zn in Sea - CRM 403. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1992.

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18

Liu, Deming. An investigation of diffusion induced grain boundary migration and diffusion inducd recrystallization in the Cu-Ni system. 1988.

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19

Marsh, Bert. The use of austenitic stainless steel versus monel (Ni-Cu) alloy in pressurized gaseous oxygen (GOX) life support systems. 1985.

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20

Hrominchuk, Joel L. Geology, stratigraphy, mineralogy, geochemistry, petrogenesis, and PGE-Cu-Ni-mineralization in the River Valley intrusion, Sudbury area, Ontario, Canada. Sudbury, Ont, 2004.

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21

Osman, Silvia. The ESP eWorkBook. Vol. I + Vol. II. Editura Universitara, 2021. http://dx.doi.org/10.5682/9786062813598.

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Intr-o lume in care toate (ni) se intampla cu iuteala gandului, iar rezultatele e bine sa se iveasca imediat, daca nu inca de ieri, practicile de invatare si predare a limbilor straine trebuie sa se adapteze si sa tina pasul cu mersul firesc al lucrurilor. Studentii secolului XXI sunt exigenti si obisnuiti cu ritmul trepidant al informatiei care curge spre ei continuu din mediile virtuale si au nevoie de metode, instrumente si practici care sa le faciliteze achizitia unei limbi straine in ritmul in (si cu) care sunt obisnuiti sa traiasca. The ESP eWorkBook este un instrument de lucru eficient, care, impreuna cu eGlossary (Academic Vocabulary and ESP Terms), sunt destinate studentilor Facultatii de Stiinte Politice, specializarile Stiinte Politice, Drept, Relatii Internationale, Sociologie si Psihologie, care studiaza Limbaje de specialitate / ESP (i.e. English for Specific Purposes).
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22

Griepink, B., and H. Muntau. The Certification of the Contents (Mass Fractions) of As, B, Cd, Cu, Hg, Mn, Mo, Ni, Pb, Sb, Se and Zn in Rye Grass: CRM 281 (BCR Information). European Communities / Union (EUR-OP/OOPEC/OPOCE), 1988.

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23

Griepink, B., and H. Muntau. The Certification of the Contents (Mass Fractions) of As, Cd, Cr, Cu, Hg, Ni, Pb, Sc, Se and Zn in 3 Sediments: Estuarine Sediment CRM 277 (BCR Information). European Communities / Union (EUR-OP/OOPEC/OPOCE), 1988.

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24

Vandendriessche, S., B. Griepink, and Marchandise. The Certification of the Contents of Alloying Elements in TiA16V4 (CRM 089) and of Added Impurities (A1, B, Co, Cr, Cu, Fe, Mn, Mo, Nb, Ni, Sn, V, W, Zr) in Titanium (CRM 090). European Communities / Union (EUR-OP/OOPEC/OPOCE), 1992.

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25

Yao, Jiadong. Xichang di qu liu hua tong (bo) nie kuang chuang cheng yin =: On the genesis of cu-(pt)-ni sulfide deposits in Xichang region (Xichang--Dian zhong di qu di zhi kuang chan ke yan cong shu). Xin hua shu dian jing xiao, 1988.

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26

Cao, Gang, and Lance DeLong. Physics of Spin-Orbit-Coupled Oxides. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780199602025.001.0001.

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Prior to 2010, most research on the physics and chemistry of transition metal oxides was dominated by compounds of the 3d-transition elements such as Cr, Mn, Fe, Co, Ni, and Cu. These materials exhibited novel, important phenomena that include giant magnetoresistance in manganites, as well as high-temperature superconductivity in doped La2CuO4 and related cuprates. The discovery in 1994 of an exotic superconducting state in Sr2RuO4 shifted some interest toward ruthenates. Moreover, the realization in 2008 that a novel variant of the classic Mott metal-insulator transition was at play in Sr2IrO4 provided the impetus for a burgeoning group of studies of the influence of strong spin-orbit interactions in “heavy” (4d- and 5d-) transition-element oxides. This book reviews recent experimental and theoretical evidence that the physical and structural properties of 4d- and 5d-oxides are decisively influenced by strong spin-orbit interactions that compete or collaborate with comparable Coulomb, magnetic exchange, and crystalline electric field interactions. The combined effect leads to unusual ground states and magnetic frustration that are unique to this class of materials. Novel couplings between the orbital/lattice and spin degrees of freedom, which lead to unusual types of magnetic order and other exotic phenomena, challenge current theoretical models. Of particular interest are recent investigations of iridates and ruthenates focusing on strong spin-orbit interactions that couple the lattice and spin degrees of freedom.
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